Ravikumar Sowmya, Bradley Arthur, Thibos Larry
Vision Science Program, University of California, Berkeley, CA, USA.
J Vis. 2010 Dec 16;10(14):18. doi: 10.1167/10.14.18.
Optical aberrations of the eye reduce image contrast and induce spatial phase shifts in the retinal image. The resulting degradation of retinal image quality hampers recognition of complex objects such as letters and faces. To study the effects of spatial phase shifts on object recognition, we simulated image blur computationally for 4 types of aberrations (defocus, astigmatism, coma, and spherical aberration) present individually or in combinations. Phase errors in the computed images were corrected (by setting phase to zero), or avoided, by removing the affected frequency components (by setting modulation to zero). The resulting images served as visual stimuli to determine the effects of phase errors on visual acuity for single letters, letter clusters, and faces. The results show that 180° phase reversals induced by optical aberrations reduce visual acuity, when there is sufficient contrast in the affected frequency components. In the presence of positive spherical aberration, acuity loss due to phase errors was more for hyperopic defocus than for myopic defocus, because the contrast of phase-reversed components was much higher for hyperopic defocus. Phase shifts introduced by coma are less than 180° and consequently have a smaller impact on acuity. Although visual acuity improved the most when all frequency components were phase-corrected, phase-reversed components were nevertheless found to aid visual acuity, demonstrating phase-reversed resolution.
眼睛的光学像差会降低图像对比度,并在视网膜图像中引起空间相位偏移。由此导致的视网膜图像质量下降会妨碍对诸如字母和面部等复杂物体的识别。为了研究空间相位偏移对物体识别的影响,我们通过计算模拟了单独或组合出现的4种像差(散焦、散光、彗差和球差)所造成的图像模糊。通过将相位设置为零来校正计算图像中的相位误差,或者通过去除受影响的频率分量(将调制设置为零)来避免相位误差。所得图像用作视觉刺激,以确定相位误差对单个字母、字母簇和面部视力的影响。结果表明,当受影响的频率分量中有足够的对比度时,由光学像差引起的180°相位反转会降低视力。在存在正球差的情况下,由于相位误差导致的远视散焦的视力损失比近视散焦更大,因为远视散焦的相位反转分量的对比度要高得多。彗差引入的相位偏移小于180°,因此对视力的影响较小。尽管当所有频率分量都进行相位校正时视力改善最大,但仍发现相位反转分量有助于提高视力,这表明了相位反转分辨率。